文献:Effect of neutrophil-like melanin biomimic photothermal nanoparticles on glomerular mesangial cells in rats with gestational diabetic nephropathy
文献链接:https://xueshu.baidu.com/usercenter/paper/show?paperid=164y04t0va5p0gu0xg5u0t50sp043028&site=xueshu_se
作者:Jing Li, Jihong Zhang, Yanqun Lu, Chun Zhang
相关产品:Glucose-PEG2000-DSPE 葡萄糖-聚乙二醇2000-磷脂
原文摘要:Gestational diabetes mellitus (GDM) is a disease with abnormal blood glucose for the first time in gestation, and its main harm is vascular lesions, usually diabetic kidney damage. A new glucose ligand modified neutrophil-like cell membrane coated melanin nanoparticle (Melanin@Glc-NCM) was designed and prepared. Through the results of cell and animal experiments the research confirmed that under near-infrared irradiation, Melanin@GlcNCM achieved excellent kidney-targeted drug delivery. In addition, the results of photothermal therapy in diabetic nephropathy of gestational rats demonstrated that Melanin@Glc-NCM could promote glomerular mesangial cell (GMC) apoptosis and restrain GMC hyperproliferation after near-infrared irradiation to protect the kidney as a therapeutic drug for diabetic nephropathy of gestational rats.
Glucose-PEG2000-DSPE 是一种多功能生物材料。其结构中,葡萄糖(Glucose)基团具备良好的生物亲和性与生物可识别性,能与生物体内多种受体特异性结合,在生物传感、细胞靶向等方面展现出优势,可作为靶向配体引导载体准确定位到特定细胞或组织部位。聚乙二醇 2000(PEG2000)链段具有高度的水溶性和生物相容性,有效改善了整体分子的亲水性,减少了在体内循环过程中的非特异性吸附反应,延长了材料在体内中的滞留时间,有利于提高化合物的效果并降低副作用。DSPE赋予了分子与细胞膜相互作用的能力,可用于构建脂质体等化合物递送载体,将携带的化合物、基因等活性物质递送至细胞内,在化合物控释系统以及生物成像等领域有着应用前景。 该文献设计并制备了一种新的葡萄糖配体修饰的中性粒细胞样细胞膜包被的黑色素纳米颗粒(黑色素@Glc-NCM)。过程如下:
图:基于膜上GLUT1的黑色素@Glc-NCM仿生光热纳米颗粒和目标GMC的设计示意图
Glc-NCM黑色素的制备
经过滤后的黑色素沉淀加入生理盐水,超声处理后得到黑色素水溶液。将黑色素水溶液与中性粒细胞膜以一定重比的中性粒细胞膜重比混合,用挤出机用多孔聚碳酸酯膜挤压。将制备的中性粒细胞包被的黑色素与Glucose-peg2000-DSPE溶液混合,室温孵育。最后,用相对分子量为3000 Da的透析袋进行透析,获得仿生光热黑色素纳米颗粒,即葡萄糖配体修饰的中性粒细胞样细胞膜包被的黑色素纳米颗粒(黑色素@Glc-NCM)和黑色素@NCM。
图:不同仿生纳米颗粒在正常gmc和高糖培养的gmc中的光热效应评价。
结论:Glucose-PEG2000-DSPE参与制备的黑色素@Glc-NCM纳米颗粒为球形,有一层膜,具有良好的稳定性。该文献实验表明,黑色素@Glc-NCM纳米颗粒的清除率为78.31%,在近红外激光照射后的光热处理中发挥了较好的作用。黑色素@Glc-NCM纳米颗粒可以通过过表达的GLUT1靶向GMCs,并明显抑制近红外照射后GMCs的过表达和增殖,促进细胞清除。